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未充分利用的豆科植物野生和驯化甜罗勒转录组和离子组中的干旱响应

Drought Response in the Transcriptome and Ionome of Wild and Domesticated L. Sweet, an Underutilized Legume.

作者信息

Kolesnikova Anastasia, Hammond John, Chapman Mark A

机构信息

School of Biological Sciences University of Southampton Southampton UK.

School of Agriculture, Policy and Development University of Reading Reading UK.

出版信息

Plant Environ Interact. 2025 Jan 19;6(1):e70027. doi: 10.1002/pei3.70027. eCollection 2025 Feb.

Abstract

Hunger remains a prevalent issue worldwide, and with a changing climate, it is expected to become an even greater problem that our food systems are not adapted to. There is therefore a need to investigate strategies to fortify our foods and food systems. Underutilized crops are farmed regionally, are often adapted to stresses, including droughts, and have great nutritional profiles, potentially being key for food security. One of these crops, L Sweet, or lablab, is a legume grown for humans or as fodder and shows remarkable drought tolerance. Understanding of lablab's molecular responses to drought and drought's effects on its nutritional qualities is limited and affects breeding potential. Using transcriptomics at three time points, changes in gene expression in response to drought were investigated in wild and domesticated lablab. The effect of drought on the elemental profile of lablab leaves was investigated using ionomics to assess drought's impact on nutritional quality. Differences in drought response between wild and domesticated lablab accessions were revealed, which were mainly due to differences in the expression of genes related to phosphorus metabolic response, cell wall organization, and cellular signaling. The leaves of wild and domesticated lablab accessions differed significantly in their elemental concentrations, with wild accessions having higher protein, zinc, and iron concentrations. Drought affected the concentration of some elements, with potential implications for the use of lablab under different environments. Overall, this study is an important first step in understanding drought response in lablab with implications for breeding and improvement of drought-tolerant lablab.

摘要

饥饿在全球范围内仍然是一个普遍存在的问题,而且随着气候的变化,预计它将成为一个更严重的问题,而我们的粮食系统并未适应这一变化。因此,有必要研究强化我们的食物和粮食系统的策略。未充分利用的作物在当地种植,通常能适应包括干旱在内的各种胁迫,并且具有很高的营养成分,可能是粮食安全的关键。其中一种作物——拉布拉豆,是一种可供人类食用或用作饲料的豆类,具有显著的耐旱性。对拉布拉豆对干旱的分子反应以及干旱对其营养品质的影响的了解有限,这影响了其育种潜力。利用三个时间点的转录组学,研究了野生和驯化拉布拉豆中基因表达对干旱的响应变化。利用离子组学研究了干旱对拉布拉豆叶片元素组成的影响,以评估干旱对营养品质的影响。揭示了野生和驯化拉布拉豆品种在干旱响应上的差异,这主要是由于与磷代谢反应、细胞壁组织和细胞信号传导相关的基因表达差异所致。野生和驯化拉布拉豆品种的叶片在元素浓度上有显著差异,野生品种的蛋白质、锌和铁浓度更高。干旱影响了一些元素的浓度,这可能对不同环境下拉布拉豆的利用产生影响。总的来说,这项研究是了解拉布拉豆干旱响应的重要第一步,对耐旱拉布拉豆的育种和改良具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd5/11742185/9ed4f13f9deb/PEI3-6-e70027-g001.jpg

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